Files
Mike-Solar 66d761b4b7 R8: finish app/ pure C ABI migration (P3-P9) and make OTIO required
- app/ no longer includes engine C++ headers nor holds engine C++ types:
  engine access goes through the oakengine C ABI plus C++ wrappers
  (oakutil/oaknode.h, oakutil/oakvideo.h) and app-local mirror types
  (tooltypes, trackreferencehandle, timelinecommonapp, keyframetypes,
  subtitleapp, serializedlayoutinfoapp, nodevaluehandle, sliderdisplaytypeapp)
- engine: new C ABI functions for block/track/clip/transition navigation
  and predicates, links, caches, waveform/playback, disk folder,
  sequence_track_list, node_free, footage_is_valid, block_get_track,
  get_brush; loadotio/saveotio ported to the current engine API
- OTIO is now a required dependency: CI and CD build it on every
  platform, FindOpenTimelineIO fixed for OTIO 0.16/0.19 (the old deps
  include requirement silently disabled OTIO everywhere), runtime
  libraries are bundled into packages and copied next to macOS binaries
  (oak_copy_otio_runtime)
- fix ProjectViewModel drag&drop mime read/write size mismatch (segfault)
- unify color label naming (k_olive -> "Oak") in the app-side mirror
- docs: OTIO required, FFmpeg minimum corrected to 6.0 (en/zh)
- gtest suite: 1925 passed, 0 failed
2026-07-31 22:46:52 +08:00

273 lines
7.3 KiB
C++

/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 Olive Team
Modifications Copyright (C) 2025 mikesolar
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
***/
#include "multicamwidget.h"
#include "oakengine/node.h"
#include <QShortcut>
#include "oakengine/events.h"
#include "oakengine/viewer.h"
#include "oakengine/timeline.h"
#include "oakengine/undo.h"
#include "widget/timeruler/timeruler.h"
namespace olive
{
#define super TimeBasedWidget
MulticamWidget::MulticamWidget(QWidget *parent)
: super{ false, false, parent }
, node_(nullptr)
, clip_(nullptr)
{
auto layout = new QVBoxLayout(this);
sizer_ = new ViewerSizer(this);
layout->addWidget(sizer_);
display_ = new MulticamDisplay(this);
display_->set_show_widget_background(true);
connect(display_, &ViewerDisplayWidget::drag_started, this,
&MulticamWidget::display_clicked);
connect(sizer_, &ViewerSizer::request_scale, display_,
&ViewerDisplayWidget::set_matrix_zoom);
connect(sizer_, &ViewerSizer::request_translate, display_,
&ViewerDisplayWidget::set_matrix_translate);
connect(display_, &ViewerDisplayWidget::hand_drag_moved, sizer_,
&ViewerSizer::hand_drag_move);
sizer_->set_widget(display_);
layout->addWidget(this->ruler());
layout->addWidget(this->scrollbar());
for (int i = 0; i < 9; i++) {
new QShortcut(QStringLiteral("Ctrl+%1").arg(QString::number(i + 1)),
this, this, [this, i] { Switch(i, false); });
new QShortcut(QString::number(i + 1), this, this,
[this, i] { Switch(i, true); });
}
}
void MulticamWidget::set_multicam_node_internal(OakEngineNode *viewer,
OakEngineNode *n,
OakEngineBlock *clip)
{
if (get_connected_node() != viewer) {
connect_viewer_node(viewer);
}
if (node_ != n) {
node_ = n;
display_->set_multicam_node(n);
}
if (clip_ != clip) {
clip_ = clip;
}
}
void MulticamWidget::set_multicam_node(OakEngineNode *viewer,
OakEngineNode *n, OakEngineBlock *clip,
const Rational &time)
{
if (time.isNaN() || !get_connected_node() ||
time == viewer_output_playhead(get_connected_node())) {
set_multicam_node_internal(viewer, n, clip);
play_queue_.clear();
} else {
MulticamNodeQueue m = { time, viewer, n, clip };
play_queue_.push_back(m);
}
}
void MulticamWidget::ConnectNodeEvent(OakEngineNode *handle)
{
viewer_sub_ = oakengine_event_subscribe(
handle, OAKENGINE_EVENT_VIEWER_SIZE_CHANGED,
[](const oakengine_event *event, void *userdata) {
auto *w = static_cast<MulticamWidget *>(userdata);
w->sizer_->set_child_size(int(event->a), int(event->b));
},
this);
viewer_sub2_ = oakengine_event_subscribe(
handle, OAKENGINE_EVENT_VIEWER_PIXEL_ASPECT_CHANGED,
[](const oakengine_event *event, void *userdata) {
auto *w = static_cast<MulticamWidget *>(userdata);
w->sizer_->set_pixel_aspect_ratio(
Rational(event->a, event->b));
},
this);
oak_video_params vp;
oakengine_viewer_get_video_params(handle, 0, &vp);
sizer_->set_child_size(vp.width, vp.height);
sizer_->set_pixel_aspect_ratio(
Rational(vp.pixel_aspect_num, vp.pixel_aspect_den));
}
void MulticamWidget::DisconnectNodeEvent(OakEngineNode *n)
{
if (viewer_sub_ > 0) {
oakengine_event_unsubscribe(viewer_sub_);
viewer_sub_ = 0;
}
if (viewer_sub2_ > 0) {
oakengine_event_unsubscribe(viewer_sub2_);
viewer_sub2_ = 0;
}
}
void MulticamWidget::TimeChangedEvent(const Rational &t)
{
super::TimeChangedEvent(t);
if (!play_queue_.empty()) {
const MulticamNodeQueue &m = play_queue_.front();
if (m.time >= t) {
set_multicam_node_internal(m.viewer, m.node, m.clip);
play_queue_.pop_front();
}
}
}
void MulticamWidget::Switch(int source, bool split_clip)
{
if (!node_) {
return;
}
OakEngineNode *cam = node_;
OakEngineBlock *clip = clip_;
const QByteArray undo_name = tr("Switched Multi-Camera Source").toUtf8();
oakengine_undo_group_begin(undo_name.constData());
// Block range via the C ABI (clip is an opaque block handle; the facade
// returns rational seconds, comparable to get_playhead()).
int clip_in_num = 0, clip_in_den = 1, clip_out_num = 0, clip_out_den = 1;
if (clip_) {
oakengine_block_get_in_rational(
reinterpret_cast<OakEngineNode *>(clip_), &clip_in_num,
&clip_in_den);
oakengine_block_get_out_rational(
reinterpret_cast<OakEngineNode *>(clip_), &clip_out_num,
&clip_out_den);
}
if (clip_ && split_clip &&
Rational(clip_in_num, clip_in_den) <
viewer_output_playhead(get_connected_node()) &&
Rational(clip_out_num, clip_out_den) >
viewer_output_playhead(get_connected_node())) {
QVector<OakEngineBlock *> blocks;
blocks.append(clip_);
// ClipBlock::block_links() via the C ABI link enumeration
const int link_count = oakengine_block_link_count(clip_);
for (int i = 0; i < link_count; i++) {
blocks.append(oakengine_block_link_at(clip_, i));
}
int split_tbn = 0, split_tbd = 0;
oakengine_node_frame_time_base(get_connected_node(),
&split_tbn, &split_tbd);
void *split = oakengine_block_split_preserving_links_command(
reinterpret_cast<void *const *>(blocks.data()), blocks.size(),
olive::core::Timecode::time_to_timestamp(
viewer_output_playhead(get_connected_node()),
olive::Rational(split_tbn, split_tbd),
olive::core::Timecode::k_round));
oakengine_undo_push(split, undo_name.constData());
clip = reinterpret_cast<OakEngineBlock *>(
oakengine_block_split_get_split(split, clip_, 0));
cam = oakengine_clip_find_multicam(
reinterpret_cast<OakEngineNode *>(clip));
}
oak_node_value val;
memset(&val, 0, sizeof(val));
val.type = OAK_NODE_VALUE_INT;
val.num = source;
if (cam) {
oakengine_node_set_input(
cam, oakengine_multicam_input_current(), &val);
}
if (clip) {
const int link_count = oakengine_block_link_count(clip);
for (int i = 0; i < link_count; i++) {
OakEngineNode *link = reinterpret_cast<OakEngineNode *>(
oakengine_block_link_at(clip, i));
if (oakengine_node_is_clip(link)) {
if (OakEngineNode *mlink =
oakengine_clip_find_multicam(link)) {
oakengine_node_set_input(
mlink, oakengine_multicam_input_current(), &val);
}
}
}
}
oakengine_undo_group_end();
display_->update();
emit switched();
}
void MulticamWidget::display_clicked(const QPoint &p)
{
if (!node_) {
return;
}
QPointF click = display_->screen_to_scene_point(p);
int width = display_->get_video_params().width();
int height = display_->get_video_params().height();
if (click.x() < 0 || click.y() < 0 || click.x() >= width ||
click.y() >= height) {
return;
}
int rows, cols;
oakengine_multicam_get_rows_and_columns(
oakengine_multicam_get_source_count(node_),
&rows, &cols);
int multi = std::max(cols, rows);
int c = click.x() / (width / multi);
int r = click.y() / (height / multi);
int source = oakengine_multicam_rows_cols_to_index(r, c, rows, cols);
Switch(source, true);
}
}